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Tipping point in plant-fungal interactions under severe drought causes abrupt rise in peatland ecosystem respiration

Permanent link
https://hdl.handle.net/10037/17580
DOI
https://doi.org/10.1111/gcb.13928
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Accepted manuscript version (PDF)
Date
2017-10-09
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Jassey, Vincent E.J.; Reczuga, Monika Katarzyna; Zielinska, Malgorzata; Slowinska, Sandra; Robroek, Bjorn J M; Mariotte, Pierre; Seppey, Christophe Victor W.; Lara, Enrique; Barabach, Jan; Slowinski, Michal; Bragazza, Luca; Chojnicki, Bogdan H.; Lamentowicz, Mariusz; Mitchell, Edward A.D.; Buttler, Alexandre
Abstract
Ecosystems are increasingly prone to climate extremes, such as drought, with long‐lasting effects on both plant and soil communities and, subsequently, on carbon (C) cycling. However, recent studies underlined the strong variability in ecosystem's response to droughts, raising the issue of nonlinear responses in plant and soil communities. The conundrum is what causes ecosystems to shift in response to drought. Here, we investigated the response of plant and soil fungi to drought of different intensities using a water table gradient in peatlands—a major C sink ecosystem. Using moving window structural equation models, we show that substantial changes in ecosystem respiration, plant and soil fungal communities occurred when the water level fell below a tipping point of −24 cm. As a corollary, ecosystem respiration was the greatest when graminoids and saprotrophic fungi became prevalent as a response to the extreme drought. Graminoids indirectly influenced fungal functional composition and soil enzyme activities through their direct effect on dissolved organic matter quality, while saprotrophic fungi directly influenced soil enzyme activities. In turn, increasing enzyme activities promoted ecosystem respiration. We show that functional transitions in ecosystem respiration critically depend on the degree of response of graminoids and saprotrophic fungi to drought. Our results represent a major advance in understanding the nonlinear nature of ecosystem properties to drought and pave the way towards a truly mechanistic understanding of the effects of drought on ecosystem processes.
Description
This is the peer reviewed version of the following article: Jassey, V. E. J., Reczuga, M. K., Zielinska, M., Slowinska, S., Robroek, B. J. M., Mariotte, P., ... Buttler, A. (2017) Tipping point in plant–fungal interactions under severe drought causes abrupt rise in peatland ecosystem respiration. Global Change Biology, 24(3), 972-98., which has been published in final form at https://doi.org/10.1111/gcb.13928. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions.
Publisher
Wiley
Citation
Jassey VE, Reczuga MK, Zielinska, Slowinska, Robroek, Mariotte, Seppey CVW, Lara E, Barabach, Slowinski, Bragazza, Chojnicki BH, Lamentowicz M, Mitchell EA, Buttler. Tipping point in plant?fungal interactions under severe drought causes abrupt rise in peatland ecosystem respiration. Global Change Biology. 2018;24(3):972-986
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© 2017 John Wiley & Sons Ltd

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